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Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae

Neisseria gonorrhoeae, responsible for the sexually transmitted infection gonorrhea, is an obligate human pathogen exquisitely adapted for survival on mucosal surfaces of humans. This host-pathogen relationship has resulted in evolution by N. gonorrhoeae of pathways that enable the use of host metal...

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Autores principales: Kammerman, Michael T., Bera, Aloke, Wu, Runrun, Harrison, Simone A., Maxwell, C. Noel, Lundquist, Karl, Noinaj, Nicholas, Chazin, Walter J., Cornelissen, Cynthia Nau
Formato: Online Artículo Texto
Lenguaje:English
Publicado: American Society for Microbiology 2020
Materias:
Acceso en línea:https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7251212/
https://www.ncbi.nlm.nih.gov/pubmed/32457249
http://dx.doi.org/10.1128/mBio.00949-20
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author Kammerman, Michael T.
Bera, Aloke
Wu, Runrun
Harrison, Simone A.
Maxwell, C. Noel
Lundquist, Karl
Noinaj, Nicholas
Chazin, Walter J.
Cornelissen, Cynthia Nau
author_facet Kammerman, Michael T.
Bera, Aloke
Wu, Runrun
Harrison, Simone A.
Maxwell, C. Noel
Lundquist, Karl
Noinaj, Nicholas
Chazin, Walter J.
Cornelissen, Cynthia Nau
author_sort Kammerman, Michael T.
collection PubMed
description Neisseria gonorrhoeae, responsible for the sexually transmitted infection gonorrhea, is an obligate human pathogen exquisitely adapted for survival on mucosal surfaces of humans. This host-pathogen relationship has resulted in evolution by N. gonorrhoeae of pathways that enable the use of host metalloproteins as required nutrients through the deployment of outer membrane-bound TonB-dependent transporters (TdTs). Recently, a TdT called TdfH was implicated in binding to calprotectin (CP) and in removal of the bound zinc (Zn), enabling gonococcal growth. TdfH is highly conserved among the pathogenic Neisseria species, making it a potentially promising candidate for inclusion into a gonococcal vaccine. Currently, the nature and specificity of the TdfH-CP interaction have not been determined. In this study, we found that TdfH specifically interacted with human calprotectin (hCP) and that growth of the gonococcus was supported in a TdfH-dependent manner only when hCP was available as a sole zinc source and not when mouse CP was provided. The binding interactions between TdfH and hCP were assessed using isothermal titration calorimetry where we observed a multistate model having both high-affinity and low-affinity sites of interaction. hCP has two Zn binding sites, and gonococcal growth assays using hCP mutants deficient in one or both of the Zn binding sites revealed that TdfH exhibited a site preference during Zn piracy and utilization. This report provides the first insights into the molecular mechanism of Zn piracy by neisserial TdfH and further highlights the obligate human nature of N. gonorrhoeae and the high-affinity interactions occurring between TdTs and their human ligands during pathogenesis.
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spelling pubmed-72512122020-06-08 Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae Kammerman, Michael T. Bera, Aloke Wu, Runrun Harrison, Simone A. Maxwell, C. Noel Lundquist, Karl Noinaj, Nicholas Chazin, Walter J. Cornelissen, Cynthia Nau mBio Research Article Neisseria gonorrhoeae, responsible for the sexually transmitted infection gonorrhea, is an obligate human pathogen exquisitely adapted for survival on mucosal surfaces of humans. This host-pathogen relationship has resulted in evolution by N. gonorrhoeae of pathways that enable the use of host metalloproteins as required nutrients through the deployment of outer membrane-bound TonB-dependent transporters (TdTs). Recently, a TdT called TdfH was implicated in binding to calprotectin (CP) and in removal of the bound zinc (Zn), enabling gonococcal growth. TdfH is highly conserved among the pathogenic Neisseria species, making it a potentially promising candidate for inclusion into a gonococcal vaccine. Currently, the nature and specificity of the TdfH-CP interaction have not been determined. In this study, we found that TdfH specifically interacted with human calprotectin (hCP) and that growth of the gonococcus was supported in a TdfH-dependent manner only when hCP was available as a sole zinc source and not when mouse CP was provided. The binding interactions between TdfH and hCP were assessed using isothermal titration calorimetry where we observed a multistate model having both high-affinity and low-affinity sites of interaction. hCP has two Zn binding sites, and gonococcal growth assays using hCP mutants deficient in one or both of the Zn binding sites revealed that TdfH exhibited a site preference during Zn piracy and utilization. This report provides the first insights into the molecular mechanism of Zn piracy by neisserial TdfH and further highlights the obligate human nature of N. gonorrhoeae and the high-affinity interactions occurring between TdTs and their human ligands during pathogenesis. American Society for Microbiology 2020-05-26 /pmc/articles/PMC7251212/ /pubmed/32457249 http://dx.doi.org/10.1128/mBio.00949-20 Text en Copyright © 2020 Kammerman et al. https://creativecommons.org/licenses/by/4.0/ This is an open-access article distributed under the terms of the Creative Commons Attribution 4.0 International license (https://creativecommons.org/licenses/by/4.0/) .
spellingShingle Research Article
Kammerman, Michael T.
Bera, Aloke
Wu, Runrun
Harrison, Simone A.
Maxwell, C. Noel
Lundquist, Karl
Noinaj, Nicholas
Chazin, Walter J.
Cornelissen, Cynthia Nau
Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae
title Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae
title_full Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae
title_fullStr Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae
title_full_unstemmed Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae
title_short Molecular Insight into TdfH-Mediated Zinc Piracy from Human Calprotectin by Neisseria gonorrhoeae
title_sort molecular insight into tdfh-mediated zinc piracy from human calprotectin by neisseria gonorrhoeae
topic Research Article
url https://www.ncbi.nlm.nih.gov/pmc/articles/PMC7251212/
https://www.ncbi.nlm.nih.gov/pubmed/32457249
http://dx.doi.org/10.1128/mBio.00949-20
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